Carnitine revisited: potential use as adjunctive treatment in diabetes

被引:86
作者
Power, R. A.
Hulver, M. W.
Zhang, J. Y.
Dubois, J.
Marchand, R. M.
Ilkayeva, O.
Muoio, D. M.
Mynatt, R. L.
机构
[1] Pennington Biomed Res Ctr, Pennington Biomed Res Ctr, Baton Rouge, LA USA
[2] Pennington Biomed Res Ctr, Div Expt Obes, Baton Rouge, LA USA
[3] Virginia Polytech State & Univ, Dept Human Nutr Foods & Exercise, Blacksburg, VA USA
[4] Duke Univ, Med Ctr, Sarah W Stedman Nutr & Metab Ctr, Dept Pharmacol & Canc Biol, Durham, NC USA
关键词
acetyl-carnitine; L-carnitine; ectopic lipids; fat oxidation; glucose oxidation; insulin resistance; mitochondria; skeletal muscle; type; 2; diabetes;
D O I
10.1007/s00125-007-0605-4
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
This study examined the efficacy of supplemental L-carnitine as an adjunctive diabetes therapy in mouse models of metabolic disease. We hypothesised that carnitine would facilitate fatty acid export from tissues in the form of acyl-carnitines, thereby alleviating lipid-induced insulin resistance. Obese mice with genetic or diet-induced forms of insulin resistance were fed rodent chow +/- 0.5% L-carnitine for a period of 1-8 weeks. Metabolic outcomes included insulin tolerance tests, indirect calorimetry and mass spectrometry-based profiling of acyl-carnitine esters in tissues and plasma. Carnitine supplementation improved insulin-stimulated glucose disposal in genetically diabetic mice and wild-type mice fed a high-fat diet, without altering body weight or food intake. In severely diabetic mice, carnitine supplementation increased average daily respiratory exchange ratio from 0.886 +/- 0.01 to 0.914 +/- 0.01 (p < 0.01), reflecting a marked increase in systemic carbohydrate oxidation. Similarly, under insulin-stimulated conditions, carbohydrate oxidation was higher and total energy expenditure increased from 172 +/- 10 to 210 +/- 9 kJ kg fat-free mass(-1) h(-1) in the carnitine-supplemented compared with control animals. These metabolic improvements corresponded with a 2.3-fold rise in circulating levels of acetyl-carnitine, which accounts for 86 and 88% of the total acyl-carnitine pool in plasma and skeletal muscle, respectively. Carnitine supplementation also increased several medium- and long-chain acyl-carnitine species in both plasma and tissues. These findings suggest that carnitine supplementation relieves lipid overload and glucose intolerance in obese rodents by enhancing mitochondrial efflux of excess acyl groups from insulin-responsive tissues. Carefully controlled clinical trials should be considered.
引用
收藏
页码:824 / 832
页数:9
相关论文
共 39 条
[1]   Impaired coordination of nutrient intake and substrate oxidation in melanocortin-4 receptor knockout mice [J].
Albarado, DC ;
McClaine, J ;
Stephens, JM ;
Mynatt, RL ;
Ye, JP ;
Bannon, AW ;
Richards, WG ;
Butler, AA .
ENDOCRINOLOGY, 2004, 145 (01) :243-252
[2]   Hepatic expression of malonyl-CoA decarboxylase reverses muscle, liver and whole-animal insulin resistance [J].
An, J ;
Muoio, DM ;
Shiota, M ;
Fujimoto, Y ;
Cline, GW ;
Shulman, GI ;
Koves, TR ;
Stevens, R ;
Millington, D ;
Newgard, CB .
NATURE MEDICINE, 2004, 10 (03) :268-274
[3]   Free fatty acids in obesity and type 2 diabetes:: defining their role in the development of insulin resistance and β-cell dysfunction [J].
Boden, G ;
Shulman, GI .
EUROPEAN JOURNAL OF CLINICAL INVESTIGATION, 2002, 32 :14-23
[4]   CARNITINE IMPROVES PERIPHERAL GLUCOSE DISPOSAL IN NON-INSULIN-DEPENDENT DIABETIC-PATIENTS [J].
CAPALDO, B ;
NAPOLI, R ;
DIBONITO, P ;
ALBANO, G ;
SACCA, L .
DIABETES RESEARCH AND CLINICAL PRACTICE, 1991, 14 (03) :191-195
[5]   A role for ceramide, but not diacylglycerol, in the antagonism of insulin signal transduction by saturated fatty acids [J].
Chavez, JA ;
Knotts, TA ;
Wang, LP ;
Li, GB ;
Dobrowsky, RT ;
Florant, GL ;
Summers, SA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (12) :10297-10303
[6]   Interaction between altered insulin and lipid metabolism in CEACAM1-inactive transgenic mice [J].
Dai, T ;
Abou-Rjaily, GA ;
Al-Share, QY ;
Yang, Y ;
Fernström, MA ;
DeAngelis, AM ;
Lee, AD ;
Sweetman, L ;
Amato, A ;
Pasquali, M ;
Lopaschuk, GD ;
Erickson, SK ;
Najjar, SM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (43) :45155-45161
[7]  
De Gaetano A, 1999, J AM COLL NUTR, V18, P289
[8]   The effect of L-carnitine on plasma lipoprotein(a) levels in hypercholesterolemic patients with type 2 diabetes mellitus [J].
Derosa, G ;
Cicero, AFG ;
Gaddi, A ;
Mugellini, A ;
Ciccarelli, L ;
Fogari, R .
CLINICAL THERAPEUTICS, 2003, 25 (05) :1429-1439
[9]   Acetyl-L-carnitine infusion increases glucose disposal in type 2 diabetic patients [J].
Giancaterini, A ;
De Gaetano, A ;
Mingrone, G ;
Gniuli, D ;
Liverani, E ;
Capristo, E ;
Greco, AV .
METABOLISM-CLINICAL AND EXPERIMENTAL, 2000, 49 (06) :704-708
[10]   EFFECTS OF INSULIN ON DIACYLGLYCEROL PROTEIN KINASE-C SIGNALING IN RAT DIAPHRAGM AND SOLEUS MUSCLES AND RELATIONSHIP TO GLUCOSE-TRANSPORT [J].
ISHIZUKA, T ;
COOPER, DR ;
HERNANDEZ, H ;
BUCKLEY, D ;
STANDAERT, M ;
FARESE, RV .
DIABETES, 1990, 39 (02) :181-190